Evidence for conservative mass transfer in the classical Algol system $\delta$ Librae from its surface carbon-to-nitrogen abundance ratio
A. Dervisoglu, K. Pavlovski, H. Lehmann, J. Southworth, D. Bewsher

TL;DR
This study investigates the mass transfer process in the Algol system $\, ext{δ}$ Librae, providing evidence that the transfer is mostly conservative, based on spectroscopic analysis and evolutionary modeling of the system's chemical composition.
Contribution
It offers the first detailed chemical abundance analysis of $\, ext{δ}$ Librae's components, demonstrating that mass transfer is predominantly conservative with minimal mass loss.
Findings
C/N ratio of 1.55 ± 0.40 in the mass-gaining star
Mass transfer in $\, ext{δ}$ Librae is nearly conservative, with little mass loss
Revised primary mass reduces previous discrepancies in stellar parameters
Abstract
Algol-type binary systems are the product of rapid mass transfer between the initially more massive component to its companion. It is still unknown whether the process is conservative, or whether substantial mass is lost from the system. The history of a system prior to mass exchange is imprinted in the photospheric chemical composition, in particular in the carbon-to-nitrogen (C/N) ratio. We use this to trace the efficiency of mass-transfer processes in the components of a classical Algol-type system, Librae. The present analysis is based on new spectroscopic data (ground-based high-resolution \'echelle spectra) and extracted archival photometric observations (space-based measurements from the STEREO satellites). In the orbital solution, non-Keplerian effects on the radial-velocity variations were taken into account. This reduces the primary's mass by 1.1 \Msun\ (23\%)…
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